首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Stability of casein mRNA is ensured by structural interactions between the 3 '-untranslated region and poly(A) protein tail via the HuR and poly(A)-binding complex
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Stability of casein mRNA is ensured by structural interactions between the 3 '-untranslated region and poly(A) protein tail via the HuR and poly(A)-binding complex

机译:酪蛋白mRNA的稳定性通过3'-非翻译区与通过HuR和poly(A)结合复合物的poly(A)蛋白质尾部之间的结构相互作用来确保

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The maintenance of mRNA stability has emerged as a mechanism of post-transcriptional control. We demonstrate that beta-casein mRNA stability is dictated by the poly(A) tail and sequences in the 3'-UTR. An in vitro mRNA decay assay revealed that beta-casein mRNA with a long poly(A) tail had higher stability than that with a short poly(A) tail. The addition of poly(A) homopolymer and 3'-UTR cRNA as competitor induced rapid degradation of beta-casein mRNA. The interaction between full-length beta-casein mRNA and poly(A) homopolymer was inhibited by the addition of the 3-UTR cRNA in the lysates, which indicates that one region of the 3'-UTR associates with the poly(A) tail through an RNA-protein interaction. The putative AU-rich element (ARE) is present at nt 897-905; deletion and mutation analysis showed that the ARE site was required for maintaining the stability of the beta-cascin 3'-UTR. In the immunoprecipitation analysis, the poly(A)-binding protein (PABP) and the RNA-binding protein HuR were pulled down by 3'-UTR cRNA, and the absence of the ARE site reduced the binding of these proteins. These experiments further revealed that the rapid degradation of beta-casein mRNA was induced by incubation with HuR- and PABP-depleted RRLs. Collectively, our results suggest that beta-casein mRNA is protected from degradation by virtue of the structural interaction between the 3'-UTR and poly(A) tail via a protein complex of HuR and PABP. (c) 2006 Elsevier B.V. All rights reserved.
机译:维持mRNA稳定性已成为转录后控制的一种机制。我们证明,β-酪蛋白的mRNA稳定性是由poly(A)尾部和3'-UTR中的序列决定的。体外mRNA衰减分析显示,带有长poly(A)尾巴的β-酪蛋白mRNA具有比带有短poly(A)尾巴的β-酪蛋白mRNA更高的稳定性。聚(A)均聚物和3'-UTR cRNA作为竞争剂的加入导致β-酪蛋白mRNA的快速降解。通过在裂解物中添加3-UTR cRNA抑制了全长β-酪蛋白mRNA与poly(A)均聚物之间的相互作用,这表明3'-UTR的一个区域与poly(A)尾巴相关通过RNA-蛋白质相互作用。推测的富含AU的元素(ARE)存在于nt 897-905;缺失和突变分析表明,ARE位点是维持β-酪蛋白3'-UTR稳定性所必需的。在免疫沉淀分析中,poly(A)结合蛋白(PABP)和RNA结合蛋白HuR被3'-UTR cRNA下拉,而ARE位点的缺失降低了这些蛋白的结合。这些实验进一步揭示了通过与消耗HuR和PABP的RRL一起温育诱导β-酪蛋白mRNA的快速降解。总体而言,我们的研究结果表明,通过HuR和PABP的蛋白质复合物,3'-UTR和poly(A)尾部之间的结构相互作用保护了β-酪蛋白mRNA的降解。 (c)2006 Elsevier B.V.保留所有权利。

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